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咪达唑仑与两种 CYP3A4 和 3A5 同工酶的原子水平相互作用差异。

Differences of Atomic-Level Interactions between Midazolam and Two CYP Isoforms 3A4 and 3A5.

机构信息

Institute of Theoretical Chemistry, College of Chemistry, Jilin University, Changchun 130023, China.

School and Hospital of Stomatology, Jilin University, Changchun 130023, China.

出版信息

Molecules. 2023 Oct 1;28(19):6900. doi: 10.3390/molecules28196900.

Abstract

CYP 3A4 and CYP 3A5 are two important members of the human cytochrome P450 family. Although their overall structures are similar, the local structures of the active site are different, which directly leads to obvious individual differences in drug metabolic efficacy and toxicity. In this work, midazolam (MDZ) was selected as the probe substrate, and its interaction with two proteins, CYP 3A4 and CYP 3A5, was studied by molecular dynamics simulation (MD) along with the calculation of the binding free energy. The results show that two protein-substrate complexes have some similarities in enzyme-substrate binding; that is, in both complexes, Ser119 forms a high occupancy hydrogen bond with MDZ, which plays a key role in the stability of the interaction between MDZ and the enzymes. However, the complex formed by CYP 3A4 and MDZ is more stable, which may be attributed to the sandwich structure formed by the fluorophenyl group of the substrate with Leu216 and Leu482. Our study interprets the binding differences between two isoform-substrate complexes and reveals a structure-function relationship from the atomic perspective, which is expected to provide a theoretical basis for accurately measuring the effectiveness and toxicity of drugs for individuals in the era of precision medicine.

摘要

CYP3A4 和 CYP3A5 是人类细胞色素 P450 家族的两个重要成员。尽管它们的整体结构相似,但活性部位的局部结构却不同,这直接导致了药物代谢功效和毒性的明显个体差异。在这项工作中,我们选择咪达唑仑(MDZ)作为探针底物,通过分子动力学模拟(MD)以及结合自由能的计算,研究了它与两种蛋白质(CYP3A4 和 CYP3A5)的相互作用。结果表明,两种蛋白-底物复合物在酶-底物结合方面具有一些相似性;也就是说,在这两种复合物中,Ser119 都与 MDZ 形成了高占据的氢键,该氢键在 MDZ 与酶之间的相互作用的稳定性中起着关键作用。然而,CYP3A4 和 MDZ 形成的复合物更稳定,这可能归因于底物的氟苯基团与 Leu216 和 Leu482 形成的三明治结构。我们的研究解释了两种同工酶-底物复合物之间的结合差异,并从原子角度揭示了结构-功能关系,有望为在精准医学时代准确测量个体药物的功效和毒性提供理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aca8/10574787/4b6b0850890c/molecules-28-06900-g001.jpg

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